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Corrosion Behavior of a Titanium Alloy in Hot Nitric Acid Condensate 被引量:1
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作者 Masayuki Takeuchi Yuichi Sano +3 位作者 Yasuo Nakajima Gunzo Uchiyama Yasuo Nojima Sachio Fujine 《Journal of Energy and Power Engineering》 2013年第6期1090-1096,共7页
The corrosion behavior of a titanium-5% tantalum alloy (Ti-STa) in hot nitric acid condensate was investigated to understand aging behavior ofreprocessing equipments. On the basis of long-term immersion tests, it wa... The corrosion behavior of a titanium-5% tantalum alloy (Ti-STa) in hot nitric acid condensate was investigated to understand aging behavior ofreprocessing equipments. On the basis of long-term immersion tests, it was determined that the corrosion of Ti-STa in nitric acid condensate is accelerated with an increase in the concentration. The corrosion rate was nearly constant during the immersion test and the coupons suffered from uniform corrosion. In addition, it is important to note that the nitric acid concentration in the condensate increased on addition of metal salts to the heated nitric acid solution. The larger valence of metal ions was contributed to the increase in the concentration of nitric acid condensate. Consequently, the metal salt in the heated nitric acid solution accelerates the corrosion of Ti-STa in the condensate. Therefore, the nitric acid condensate condition should be carefully considered for the corrosion environment of titanium and its alloys. 展开更多
关键词 Titanium-5% tantalum alloy corrosion spent nuclear fuel reprocessing nitric acid condensate metal salt effect Gibbsfree energy of hydration.
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Kinetic analysis of experiment data for the formation of C.I.Acid Blue 9 leuco compound
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作者 Rongwen Lu Ziang Zhao +2 位作者 Xinyu Hao Beibei Shao Shufen Zhang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第10期1422-1426,共5页
A systematic study of the synthesis of C.I.Acid Blue 9 leuco compound in water is reported.The kinetic analysis of experimental data for the condensation reaction between 2-formylbenzenesulfonic acid sodium and N-ethy... A systematic study of the synthesis of C.I.Acid Blue 9 leuco compound in water is reported.The kinetic analysis of experimental data for the condensation reaction between 2-formylbenzenesulfonic acid sodium and N-ethyl-N-(3'-sulfonic acid benzyl) aniline obtained at four different temperatures ranging between 85 and 100°C is discussed.It is shown that the reaction followed second-order rate kinetics.The overall rate constant(k) increased with the increase of temperature.On the basis of the value of k,activation energy(E_a) of the reaction was evaluated.Importantly,it is found that reactant concentration has great effect on the formation of C.I.Acid Blue 9 leuco compound,implying that it is not enough to improve the conversion of N-ethyl-N-(3'-sulfonic acid benzyl) aniline by only prolonging reaction time in the late period of the reaction. 展开更多
关键词 Triphenylmethane dyes C.I.acid blue 9 leuco compound Kinetics Condensation
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Sulfamic acid as a green,reusable catalyst for stepwise,tandem&one-pot solvent-free synthesis of pyrazole derivatives
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作者 Veera Swamy Konkala Pramod Kumar Dubey 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第7期1571-1576,共6页
Sulfamic acid(SA) is a bi-functional, cost-effective and reusable green catalyst for the synthesis of 4-(pyrazol-4-yl)methylenepyrazol-5(4H)-one derivatives by one-pot, three-component condensation of pyrazol-4-... Sulfamic acid(SA) is a bi-functional, cost-effective and reusable green catalyst for the synthesis of 4-(pyrazol-4-yl)methylenepyrazol-5(4H)-one derivatives by one-pot, three-component condensation of pyrazol-4-carbaxaldehydes, b-ketoesters and phenyl hydrazine(Route-I). In addition to this method,another simple condensation of pyrazol-4-carbaxaldehydes with pyrazolone in the presence of SA under the solvent-free condition in good yield is reported. The merits of these protocols are mild conditions,non-aqueous workup, high yields, easy availability of the catalyst, no chromatographic separation and inexpensive solid acid catalyst. Furthermore, SA could be recycled and reused for five times without losing its catalytic activity. 展开更多
关键词 Pyrazol-4-carbaxaldehydes Knoevenagel condensation Sulfamic acid Multicomponent reaction Physical grinding
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